Feasibility of magnetron sputtered nano‐cerium oxide thin films for solid oxide fuel cells interconnector: Microstructure evolution under the anode side

微观结构 氧化铈 材料科学 阳极 氧化物 纳米- 腔磁控管 薄膜 溅射沉积 化学工程 冶金 复合材料 纳米技术 化学 溅射 电极 物理化学 工程类
作者
Yingzhen Hu,Desheng Li,Guo‐Hua Hu,Yanan Li,Meng Yu,Cheng‐Xin Li
出处
期刊:Journal of the American Ceramic Society [Wiley]
标识
DOI:10.1111/jace.20308
摘要

Abstract Given the significant oxidation challenges and reciprocal diffusion reactions that occur under the operating conditions of solid oxide fuel cells (SOFC) anodes, it is crucial to develop thin protective coatings that possess a dense structure, appropriate conductivity, good chemical and mechanical compatibility for metallic interconnectors (MIC). Except for the mainly studied cathode environments, the fuel streams during the real stack operation will also inevitably confront the MIC with oxidation and interfacial reaction issues, giving a potential contribution to the overall stack degradation. However, there is relatively little research on these service stability issues induced by the anode operating atmospheres. This research emphasizes the continuity of sputtered CeO x coatings of different thicknesses during the initial oxidation phase and seeks to optimize the coating thickness. By varying the sputtering powers, CeO x coatings with thicknesses of 110, 380, and 600 nm are deposited on laboratory‐made ferritic stainless steel (AMIC 21). The chemical states of the sputtered Ce ions, the microstructure evolution, and the interfacial reaction mechanism for the CeO x ‐coated MIC are successively explored under a simulated anode environment. After isothermal exposure to SOFC anode‐reducing atmosphere (90%H 2 /10%H 2 O) at 800°C for 50–300 h, the CeO x coatings exhibit good structural stability with uniform grains tightly arranged on the surface. The interfacial reaction layers detected for the CeO x ‐coated AMIC 21 samples are less than 1.6 µm after exposure for 300 h, indicating the effectiveness of CeO x coatings for SOFC interconnector application.
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